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Introduction to turbulence

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*  [[Generalization to the estimator of any quantity#Generalization to the estimator of any quantity| Generalization to the estimator of any quantity]]
*  [[Generalization to the estimator of any quantity#Generalization to the estimator of any quantity| Generalization to the estimator of any quantity]]
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== [[Reynolds averaged equations]] ==
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== [[Reynolds averaged equations and the Turbulence Closure Problem]] ==
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* [[Reynolds averaged equations #The equations governing the instantaneous fluid motions | The equations governing the instantaneous fluid motions ]]  
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* [[Reynolds averaged equations and the Turbulence Closure Problem#The equations governing the instantaneous fluid motions | The equations governing the instantaneous fluid motions ]]  
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* [[Reynolds averaged equations #Equations for the average velocity | Equations for the average velocity ]]  
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* [[Reynolds averaged equations and the Turbulence Closure Problem#Equations for the average velocity | Equations for the average velocity ]]  
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* [[Reynolds averaged equations #The turbulence problem | The turbulence problem ]]
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* [[Reynolds averaged equations and the Turbulence Closure Problem#The turbulence problem | The turbulence problem ]]
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* [[Reynolds averaged equations #The origins of turbulence | The origins of turbulence ]]
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* [[Reynolds averaged equations and the Turbulence Closure Problem#The origins of turbulence | The origins of turbulence ]]
== [[Turbulence kinetic energy]] ==
== [[Turbulence kinetic energy]] ==

Revision as of 08:33, 14 June 2006

Contents

What is turbulence?

The elements of statistical analysis

Reynolds averaged equations and the Turbulence Closure Problem

Turbulence kinetic energy

Stationarity and homogeneity

Homogeneous turbulence

Free turbulent shear flows

Wall bounded turbulent flows

Credits

This text was based on "Introduction to Turbulence" by Professor William K.George, Chalmers University of Technology, Sweden.



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